The Synthesis of Magnetic Lysozyme-Imprinted Polymers by Means of Distillation-Precipitation Polymerization for Selective Protein Enrichment
Cao, Jiali1,3; Zhang, Xihao1,3; He, Xiwen1; Chen, Langxing1; Zhang, Yukui1,2,3
刊名chemistry-an asian journal
2014-02-01
卷号9期号:2页码:526-533
关键词imprinting magnetic properties nanoparticles polymerization proteins
通讯作者jialicao
英文摘要a protein imprinting approach for the synthesis of core-shell structure nanoparticles with a magnetic core and molecularly imprinted polymer (mip) shell was developed using a simple distillation-precipitation polymerization method. in this work, fe3o4 magnetic nanoparticles were first synthesized through a solvothermal method and then were conveniently surface-modified with 3-(methacryloyloxy)propyltrimethoxylsilane as anchor molecules to donate vinyl groups. next a high-density mip shell was coated onto the surface of the magnetic nanoparticles by the copolymerization of functional monomer acrylamide (aam), cross-linking agent n,n-methylenebisacrylamide (mba), the initiator azodiisobutyronitrile (aibn), and protein in acetonitrile heated at reflux. the morphology, adsorption, and recognition properties of the magnetic molecularly imprinted nanoparticles were investigated by transmission electron microscopy (tem), scanning electron microscopy (sem), x-ray diffraction (xrd), fourier transform infrared spectroscopy (ftir), thermogravimetric analysis (tga), vibrating sample magnetometer (vsm), and rebinding experiments. the resulting mip showed a high adsorption capacity (104.8mgg(-1)) and specific recognition (imprinting factor=7.6) to lysozyme (lyz). the as-prepared fe3o4@lyz-mip nanoparticles with a mean diameter of 320nm were coated with an mip shell that was 20nm thick, which enabled fe3o4@lyz-mip to easily reach adsorption equilibrium. the high magnetization saturation (40.35emug(-1)) endows the materials with the convenience of magnetic separation under an external magnetic field and allows them to be subsequently reused. furthermore, fe3o4@lyz-mip could selectively extract a target protein from real egg-white samples under an external magnetic field.
学科主题物理化学
WOS标题词science & technology ; physical sciences
类目[WOS]chemistry, multidisciplinary
研究领域[WOS]chemistry
关键词[WOS]solid-phase extraction ; histidine-tagged proteins ; tof-ms analysis ; ribonuclease-a ; submicrometer particles ; highly efficient ; aqueous-media ; nanoparticles ; microspheres ; recognition
收录类别SCI
语种英语
WOS记录号WOS:000331088600020
公开日期2016-05-09
内容类型期刊论文
源URL[http://cas-ir.dicp.ac.cn/handle/321008/144456]  
专题大连化学物理研究所_中国科学院大连化学物理研究所
作者单位1.Nankai Univ, Dept Chem, State Key Lab Med Chem Biol, Tianjin 300071, Peoples R China
2.Chinese Acad Sci, Dalian Inst Chem Phys, Dalian 116023, Peoples R China
3.Synerget Innovat Ctr Chem Sci & Engn Tianjin, Tianjin 300071, Peoples R China
推荐引用方式
GB/T 7714
Cao, Jiali,Zhang, Xihao,He, Xiwen,et al. The Synthesis of Magnetic Lysozyme-Imprinted Polymers by Means of Distillation-Precipitation Polymerization for Selective Protein Enrichment[J]. chemistry-an asian journal,2014,9(2):526-533.
APA Cao, Jiali,Zhang, Xihao,He, Xiwen,Chen, Langxing,&Zhang, Yukui.(2014).The Synthesis of Magnetic Lysozyme-Imprinted Polymers by Means of Distillation-Precipitation Polymerization for Selective Protein Enrichment.chemistry-an asian journal,9(2),526-533.
MLA Cao, Jiali,et al."The Synthesis of Magnetic Lysozyme-Imprinted Polymers by Means of Distillation-Precipitation Polymerization for Selective Protein Enrichment".chemistry-an asian journal 9.2(2014):526-533.
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